Muon spin rotation studies of electronic excitations and magnetism in the vortex cores of superconductors
Creators
- 1. Department of Physics, Simon Fraser University, Burnaby, British Columbia V5A 1S6 (Canada)
Description
The focus of this paper is on recent progress in muon spin rotation (μSR) studies of the vortex cores in type-II superconductors. By comparison of μSR measurements of the vortex core size in a variety of materials with results from techniques that directly probe electronic states, the effect of delocalized quasiparticles on the spatial variation of field in a lattice of interacting vortices has been determined for both single-band and multi-band superconductors. These studies demonstrate the remarkable accuracy of what some still consider an exotic technique. In recent years μSR has also been used to search for magnetism in and around the vortex cores of high-temperature superconductors. As a local probe μSR is specially suited for detecting static or quasistatic magnetism having short-range or random spatial correlations. As discussed in this review, μSR experiments support a generic phase diagram of competing superconducting and magnetic order parameters, characterized by a quantum phase transition to a state where the competing order is spatially nonuniform
Additional details
Identifiers
- DOI
- 10.1088/0034-4885/70/11/R01;
- PII
- S0034-4885(07)99347-1;
Publishing Information
- Journal Title
- Reports on Progress in Physics
- Journal Volume
- 70
- Journal Issue
- 11
- Journal Page Range
- p. 1717-1755
- ISSN
- 0034-4885
- CODEN
- RPPHAG
INIS
- Country of Publication
- United Kingdom
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 39029006
- Subject category
- S75: CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY;
- Descriptors DEI
- EXCITATION; HIGH-TC SUPERCONDUCTORS; MAGNETISM; MUON SPIN RELAXATION; ORDER PARAMETERS; PHASE DIAGRAMS; PHASE TRANSFORMATIONS; QUASI PARTICLES; RANDOMNESS
- Descriptors DEC
- DIAGRAMS; DIMENSIONLESS NUMBERS; ENERGY-LEVEL TRANSITIONS; INFORMATION; RELAXATION; SUPERCONDUCTORS; TYPE-II SUPERCONDUCTORS